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Biomimetic composite of elastin-based hydrogel and electrospun fibers: the way forward for smart drug delivery

机译:弹性蛋白基水凝胶和电纺纤维的仿生复合材料:智能药物输送的未来之路

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Stimuli-responsive hydrogel matrices are inspiring manifold applications in controlled delivery of bioactive compounds. Elastin-derived polypeptides form hydrogel matrices that may release bioactive moieties as a function of local increase of active elastases, as it would occur in several processes like inflammation. In view of the development of a patch for healing wounds, recombinant elastin-based polypeptides were combined with a proteolysis-resistant scaffold, made of electrospun poly-L-lactic acid (PLLA) fibers. The results of this study demonstrated the compatibility of these two components. An efficient procedure to obtain a composite material retaining the main features of each component was established. The release of the elastin moiety was monitored by means of a simple protocol. Our data showed that electrospun poly-L-lactic acid (PLLA) can form a composite with fusion proteins bound to elastin-derived polypeptides. Therefore, our approach allows designing a therapeutic agent delivery platform to realize devices capable of responding and interacting with biological systems at the molecular level.
机译:刺激响应水凝胶基质在控制生物活性化合物的输送方面启发了多种应用。弹性蛋白衍生的多肽形成水凝胶基质,其可能会根据活性弹性蛋白酶的局部增加而释放生物活性部分,因为这会在炎症等多个过程中发生。考虑到用于伤口愈合的贴剂的发展,将基于弹性蛋白的重组多肽与由电纺聚L-乳酸(PLLA)纤维制成的耐蛋白水解的支架相结合。这项研究的结果证明了这两个组件的兼容性。建立了一种有效的程序来获得保留每个组件主要特征的复合材料。弹性蛋白部分的释放通过简单的方案监测。我们的数据表明,静电纺丝的聚-L-乳酸(PLLA)可以与结合有弹性蛋白的多肽的融合蛋白形成复合物。因此,我们的方法允许设计治疗剂输送平台,以实现能够在分子水平上响应生物系统并与之相互作用的设备。

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